石墨烯
电导
电极
密度泛函理论
分子
断开连接
量子隧道
材料科学
扫描隧道显微镜
化学
分子物理学
凝聚态物理
纳米技术
化学物理
计算化学
光电子学
物理
物理化学
有机化学
作者
Chun‐Hui He,Qian Zhang,Yinqi Fan,Cezhou Zhao,Chun Zhao,Jingyao Ye,Yannick J. Dappe,Richard J. Nichols,Li Yang
出处
期刊:ChemPhysChem
[Wiley]
日期:2019-05-20
卷期号:20 (14): 1830-1836
被引量:13
标识
DOI:10.1002/cphc.201900424
摘要
Abstract A combined experimental and theoretical study on molecular junctions with asymmetry in both the electrode type and in the anchoring group type is presented. A scanning tunnelling microscope is used to create the “asymmetric” Au‐S‐(CH 2 )n‐COOH‐graphene molecular junctions and determine their conductance. The measurements are combined with electron transport calculations based on density functional theory (DFT) to analyze the electrical conductance and its length attenuation factor from a series of junctions of different molecular length ( n ). These results show an unexpected trend with a rather high conductance and a smaller attenuation factor for the Au‐S‐(CH 2 ) n ‐COOH‐graphene configuration compared to the equivalent junction with the “symmetrical” COOH contacting using the HOOC‐(CH 2 ) n ‐COOH series. Owing to the effect of the graphene electrode, the attenuation factor is also smaller than the one obtained for Au/Au electrodes. These results are interpreted through the relative molecule/electrode couplings and molecular level alignments as determined with DFT calculations. In an asymmetric junction, the electrical current flows through the less resistive conductance channel, similarly to what is observed in the macroscopic regime.
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